A polynomial-time dynamic programming algorithm for an optimal picking problem in automated warehouses

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Abstract

We consider an optimization problem arising when a set of items must be selected and picked up from given locations in an automated storage and retrieval system by a crane of given capacity, minimizing the overall distance traveled. The problem has been classified as open in a recent taxonomy of optimal picking problems in automated warehouses. In this paper, we analyze some non-trivial properties of the problem and we describe a polynomial-time dynamic programming algorithm to solve it to proven optimality.

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APA

Barbato, M., Ceselli, A., & Righini, G. (2024). A polynomial-time dynamic programming algorithm for an optimal picking problem in automated warehouses. Journal of Scheduling, 27(4), 393–407. https://doi.org/10.1007/s10951-024-00811-2

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